Earthquake Rupturing in Fluid-Overpressured Crust: How Common?

被引:57
作者
Sibson, Richard H. [1 ]
机构
[1] Univ Otago, Dept Geol, Dunedin 9054, New Zealand
关键词
SAN-ANDREAS FAULT; MID-NIIGATA PREFECTURE; STRIKE-SLIP-FAULT; TAUPO VOLCANIC ZONE; NEW-ZEALAND; SOUTHERN-CALIFORNIA; COMPRESSIONAL INVERSION; SEISMOGENIC ZONE; FRICTIONAL-PROPERTIES; ACCRETIONARY WEDGES;
D O I
10.1007/s00024-014-0838-3
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Whether or not ruptures nucleate in fluid-overpressured crust (lambda (v) = P (f)/sigma (v) > 0.4) is important because pore-fluids overpressured above hydrostatic lower fault frictional strength and may also vary through the earthquake cycle, acting as an independent variable affecting fault failure. Containment of fluid overpressure is precarious because pressure-dependent activation of faults and fractures allows drainage from overpressured portions of the crust. Discharge of fluids through activated fault-fracture permeability (fault-valve action) decreases overpressure so that subsequent failure depends on the cycling of both overpressure and frictional strength as well as tectonic stress. Geometric and mechanical considerations suggest that fluid overpressures are more likely to develop and be sustained in compressional/transpressional regimes as opposed to extensional/transtensional tectonic settings. On the basis of geophysical observations and force-balance analyses, subduction interface shear zones appear to be strongly but variably overpressured to near-lithostatic levels (lambda (v) > 0.9) over the full depth range of seismogenic megathrusts. Strong overpressuring at seismogenic depths is also documented in active fold-thrust belts and in areas of ongoing compressional inversion (e.g., northern Honshu) where inherited normal faults are reactivated as steep reverse faults, requiring near-lithostatic overpressures (lambda (v) -> 1.0) at depths of rupture initiation. Evidence for overpressuring around strike-slip faults is less clear but tends to be strongest in areas of transpression. In areas of extensional tectonics coincident with particularly high fluid discharge, there is some evidence of overpressuring concentrated towards the base of the seismogenic zone. In general, because of the limited resolution of geophysical techniques, it is easier to make the case for rupture propagation through overpressured crust than to make a definitive case for the direct involvement of overpressured fluids in rupture nucleation, though in some instances the circumstantial evidence is compelling. An unresolved related issue is the heterogeneity of overpressuring. Do the active fault zones themselves serve as fluid conduits that are locally overpressured with respect to the surrounding crust?.
引用
收藏
页码:2867 / 2885
页数:19
相关论文
共 143 条
[1]   Seismic low-velocity layer at the top of subducting slabs: observations, predictions, and systematics [J].
Abers, GA .
PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 2005, 149 (1-2) :7-29
[2]  
Anderson E.M., 1905, Trans. Edinburgh Geol. Soc., V8, P387, DOI [10.1144/transed.8.3.387, DOI 10.1144/TRANSED.8.3.387]
[3]  
[Anonymous], 2004, GEOPHYS MONOGR SER
[4]  
[Anonymous], 1995, AM GEOPHYS UNION RES
[5]   Fluid flow and seismicity pattern: Evidence from the 1997 Umbria-Marche (central Italy) seismic sequence [J].
Antonioli, A ;
Piccinini, D ;
Chiaraluce, L ;
Cocco, M .
GEOPHYSICAL RESEARCH LETTERS, 2005, 32 (10) :1-4
[6]   Seismic evidence for overpressured subducted oceanic crust and megathrust fault sealing [J].
Audet, Pascal ;
Bostock, Michael G. ;
Christensen, Nikolas I. ;
Peacock, Simon M. .
NATURE, 2009, 457 (7225) :76-78
[7]   Induced seismicity during the stimulation of a geothermal HFR reservoir in the Cooper Basin, Australia [J].
Baisch, Stefan ;
Weidler, Ralph ;
Voros, Robert ;
Wyborn, Doone ;
de Graaf, Lambertus .
BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2006, 96 (06) :2242-2256
[8]   A deep crustal fluid channel into the San Andreas Fault System near Parkfield, California [J].
Becken, M. ;
Ritter, O. ;
Park, S. K. ;
Bedrosian, P. A. ;
Weckmann, U. ;
Weber, M. .
GEOPHYSICAL JOURNAL INTERNATIONAL, 2008, 173 (02) :718-732
[9]   Correlation between deep fluids, tremor and creep along the central San Andreas fault [J].
Becken, Michael ;
Ritter, Oliver ;
Bedrosian, Paul A. ;
Weckmann, Ute .
NATURE, 2011, 480 (7375) :87-U248
[10]   Magnetotelluric imaging of the creeping segment of the San Andreas Fault near Hollister [J].
Bedrosian, PA ;
Unsworth, MJ ;
Egbert, G .
GEOPHYSICAL RESEARCH LETTERS, 2002, 29 (11) :1-1